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基于聚合物微观粘度的 BODIPY 共轭温敏共聚荧光温度计。

BODIPY-conjugated thermoresponsive copolymer as a fluorescent thermometer based on polymer microviscosity.

机构信息

Research Center for Solar Energy Chemistry and Division of Chemical Engineering, Graduate School of Engineering Science, Osaka University, Toyonaka 560-8531, Japan.

出版信息

Langmuir. 2009 Nov 17;25(22):13176-82. doi: 10.1021/la901860x.

Abstract

A simple copolymer, poly(NIPAM-co-BODIPY), consisting of N-isopropylacrylamide (NIPAM) and boradiazaindacene (BODIPY) units, behaves as a fluorescent thermometer in water. The copolymer exhibits weak fluorescence at <23 degrees C, but the intensity increases with a rise in temperature up to 35 degrees C, enabling an accurate indication of the solution temperature at 23-35 degrees C. The heat-induced fluorescence enhancement is driven by an increase in the polymer microviscosity, associated with a phase transition of the polymer from the coil to globule state. The viscous domain formed inside the globule-state polymer suppresses the rotation of the meso-pyridinium group of the excited-state BODIPY units, resulting in heat-induced fluorescence enhancement. The polymer shows reversible fluorescence enhancement/quenching regardless of the heating/cooling process and displays high reusability with a simple recovery process.

摘要

一种简单的共聚物,聚(NIPAM-co-BODIPY),由 N-异丙基丙烯酰胺(NIPAM)和硼二嗪(BODIPY)单元组成,在水中表现为荧光温度计。共聚物在 <23°C 时表现出微弱的荧光,但随着温度的升高,荧光强度增加,在 23-35°C 范围内可以准确指示溶液温度。热诱导荧光增强是由聚合物微粘度的增加引起的,这与聚合物从线圈到球粒状态的相转变有关。在球粒状态聚合物内部形成的粘性域抑制了激发态 BODIPY 单元中中位吡啶鎓基团的旋转,导致热诱导荧光增强。聚合物无论在加热/冷却过程中都表现出可逆的荧光增强/猝灭,并具有简单的回收过程,显示出高的可重复使用性。

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